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Settlement Prediction and Differential Settlement Criterion for Heightening and Thickening Levee

机译:提升和增厚堤防的沉降预测和差动结算标准

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摘要

Owing to the pavement cracking of heightening and thickening levees (HTL) caused by differential settlement, it is necessary to study the settlement prediction and differential settlement criterion for HTLs. In this study, an HTL was taken as the study object. First, leveling observation and layered settlement observation were adopted, and a generalized settlement prediction model (GSPM) that can describe both S-shaped and hyperbolic settlement⁻time curves was proposed. The physical meanings of GSPM parameters were analyzed. Moreover, the effectiveness of the GSPM was verified using field monitoring data. Second, finite element analysis based on a viscoelastic constitutive model was used to reveal the quantitative relationship between the differential settlement and horizontal stress of the pavement. On this basis, the differential settlement criterion was obtained. The results showed that the GSPM can unify the logistic model and hyperbolic model by introducing two morphological change parameters. In addition, the GSPM can be more widely used, more accurate, and more stable than the traditional logistic model and hyperbolic model. When an asphalt concrete pavement (whose ultimate tensile stress is 0.12 MPa) is used, the corresponding differential settlement criterion is approximately 4.3 cm. The research results can provide a reference for reasonable differential settlement control for HTLs in order to prevent pavement cracking.
机译:由于采用差动沉降引起的高温和增厚的滑动纱(HTL)的路面开裂,有必要研究HTLS的沉降预测和差动结算标准。在这项研究中,将HTL作为研究对象。首先,采用平整观察和分层沉降观察,并提出了可以描述S形和双曲沉降截面曲线的广义沉降预测模型(GSPM)。分析了GSPM参数的物理含义。此外,使用现场监测数据验证GSPM的有效性。其次,基于粘弹性本构体模型的有限元分析用于揭示路面差动沉降和水平应力之间的定量关系。在此基础上,获得了差动结算标准。结果表明,GSPM可以通过引入两个形态变化参数来统一物流模型和双曲线模型。此外,GSPM可以更广泛地使用,更准确,更稳定,比传统的物流模型和双曲模型更稳定。当使用沥青混凝土路面(其最终拉伸应力为0.12MPa)时,相应的差动沉降标准约为4.3厘米。研究结果可以为HTLS提供合理的差动沉降控制,以防止路面开裂。

著录项

  • 作者

    Tao Lan; Jian Wang;

  • 作者单位
  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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